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1

Major, Péter. Multiple Wiener-Itô Integrals. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-02642-8.

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2

Braides, Andrea. Homogenization of multiple integrals. Oxford: Clarendon Press, 1998.

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3

Spandagos, Vaggelēs. Oloklērōtikos logismos: Theōria-methodologia, 1600 lymenes askēseis. Athēna: Aithra, 1988.

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4

Smirnov, V. A. Analytic tools for Feynman integrals. Heidelberg: Springer, 2012.

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5

Sloan, I. H. Lattice methods for multiple integration. Oxford: Clarendon Press, 1994.

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6

service), SpringerLink (Online, ed. Multiple Integrals in the Calculus of Variations. Berlin, Heidelberg: Springer-Verlag Berlin Heidelberg, 2008.

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7

Raphael, Höegh-Krohn, and Mazzucchi Sonia, eds. Mathematical theory of Feynman path integrals: An introduction. 2nd ed. Berlin: Springer, 2008.

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8

Kwapień, Stanisław, and Wojbor A. Woyczyński. Random Series and Stochastic Integrals: Single and Multiple. Boston, MA: Birkhäuser Boston, 1992. http://dx.doi.org/10.1007/978-1-4612-0425-1.

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9

1943-, Woyczyński W. A., ed. Random series and stochastic integrals: Single and multiple. Boston: Birkhäuser, 1992.

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10

Korobov, N. M. Teoretikochislovye metody v priblizhennom analize. 2nd ed. Moskva: MT︠S︡NMO, 2004.

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11

Kuznet︠s︡ov, D. F. Strong approximation of multiple Ito and Stratonovich stochastic integrals: Multple Fourier series approach. Saint-Peterburg: Politechnical University Publishing House, 2011.

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12

Christian, Houdré, Pérez-Abreu Víctor, and Workshop on Multiple Wiener-Itô and Their Applications (1992 : Centro de Investigación en Matemáticas), eds. Chaos expansions, multiple Wiener-Itô integrals and their applications. Boca Raton, FL: CRC Press, 1994.

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13

Major, Péter. On the Estimation of Multiple Random Integrals and U-Statistics. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-37617-7.

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14

T, Ivancevic Tijana, ed. Quantum leap: From Dirac and Feynman, across the universe, to human body and mind. Singapore: World Scientific, 2008.

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15

Kim, Joonil. Multiple-Hilbert transforms associated with polynomials. Providence, Rhode Island: American Mathematical Society, 2015.

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16

1946-, Zimmerman Michael E., ed. Integral ecology: Uniting multiple perspectives on the natural world. Boston: Integral Books, 2009.

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17

Rotations, quaternions, and double groups. Oxford [Oxfordshire]: Clarendon Press, 1986.

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18

Zhukova, Galina, and Margarita Rushaylo. The mathematical analysis. Volume 2. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1072172.

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The aim of the tutorial is to help students to master the basic concepts and methods of the study of calculus. In volume 2 we study analytic geometry in space; differential calculus of functions of several variables; local, conditional, global extrema of functions of several variables; multiple, curvilinear and surface integrals; elements of field theory; numerical, power series, Taylor series and Maclaurin, and Fourier series; applications to the analysis and solution of applied problems. Great attention is paid to comparison of these methods, the proper choice of study design tasks, analyze complex situations that arise in the study of these branches of mathematical analysis. For self-training and quality control knowledge given test questions. For teachers, students and postgraduate students studying mathematical analysis.
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19

Silvapulle, Paramsothy. A Lagrange multiplier test for seasonal fractional integration. Bundoora, Vic., Australia: La Trobe University, Schools of Economics and Commerce, 1995.

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20

Zhukova, Galina, and Margarita Rushaylo. Mathematical analysis in examples and tasks. Part 2. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1072162.

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The purpose of the textbook is to help students to master basic concepts and research methods used in mathematical analysis. In part 2 of the proposed cycle of workshops on the following topics: analytic geometry in space; differential calculus of functions of several variables; local, conditional, global extrema of functions of several variables; multiple, curvilinear and surface integrals; elements of field theory; numerical, power series, Fourier series; applications to the analysis and solution of applied problems. These topics are studied in universities, usually in the second semester in the discipline "Mathematical analysis" or the course "Higher mathematics", "Mathematics". For the development of each topic the necessary theoretical and background material, reviewed a large number of examples with detailed analysis and solutions, the options for independent work. For self-training and quality control of the acquired knowledge in each section designed exercises and tasks with answers and guidance. It is recommended that teachers, students and graduate students studying advanced mathematics.
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21

International Symposium: Integrated Management of Watersheds for Multiple Use. International Symposiun, Integrated Management of Watersheds for Multiple Use: March 26-30, 1990, Morelia, Mexico = Simposio Internacional: Manejo Integrado de Cuencas para Uso Multiple. Fort Collins, Colo: Rocky Mountain Forest and Range Experiment Station, 1990.

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22

International Symposium: Integrated Management of Watersheds for Multiple Use. International Symposium, Integrated Management of Watersheds for Multiple Use: March 26-30, 1990, Morelia, Mexico = Simposio Internacional: Manejo Integrado de Cuencas para Uso Multiple. Fort Collins, Colo: Rocky Mountain Forest and Range Experiment Station, 1990.

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23

Ledermann, Walter. Multiple Integrals. Springer London, Limited, 2012.

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24

S, Murugan. Multiple Integrals. Independently Published, 2021.

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25

Multiple Integrals. Springer, 2012.

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26

Smirnov, Vladimir A. A. Evaluating Feynman Integrals. Springer, 2010.

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27

Sharma, A. K. Text Book of Multiple Integrals. Discovery Publishing House, 2005.

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28

Smirnov, Vladimir A. Feynman Integral Calculus. Springer London, Limited, 2006.

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29

Mathematical Feynman path integrals and their applications. Singapore: World Scientific, 2009.

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30

Multiple Wienerito Integrals Lecture Notes in Mathematics. Springer International Publishing AG, 2013.

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31

Kwapień, Stanisław. Random Series and Stochastic Integrals: Single and Multiple. 1992.

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32

Woyczynski, Wojbor A., and Stanislaw Kwapien. Random Series and Stochastic Integrals: Single and Multiple (Probability and its Applications). Birkhauser, 2000.

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33

Hamber, Herbert W. Quantum Gravitation: The Feynman Path Integral Approach. Springer, 2008.

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34

Major, Peter. Multiple Wiener-Itô Integrals: With Applications to Limit Theorems. Springer, 2013.

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35

Course in Hodge Theory: With Emphasis on Multiple Integrals. International Press of Boston, Incorporated, 2021.

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36

Chapter 13: Multiple Integrals From Multivariable Calculus 3rd Edition. I.T.P. Custom Publishing, 1997.

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37

Multiple Integrals and Vector Analysis: For Engineers and Scientists. Independently Published, 2020.

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38

Multiple Integrals and Vector Analysis: For Engineers and Scientists. Independently Published, 2021.

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39

Smirnov, Vladimir A. Applied Asymptotic Expansions in Momenta and Masses. Springer, 2010.

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40

Smirnov, Vladimir A. Applied Asymptotic Expansions in Momenta and Masses. Springer, 2003.

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41

Major, Péter. On the Estimation of Multiple Random Integrals and U-Statistics. Springer, 2013.

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42

Quantum gravitation: The Feynman path integral approach. Berlin: Springer, 2009.

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43

Asymptotic Expansion of Multiple Integrals and the Method of Stationary Phase. Franklin Classics, 2018.

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44

Asymptotic Expansion of Multiple Integrals and the Method of Stationary Phase. Creative Media Partners, LLC, 2018.

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45

Kline, Morris. Asymptotic Expansion of Multiple Integrals and the Method of Stationary Phase. Creative Media Partners, LLC, 2022.

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46

Feynman Integral Calculus. Springer, 2006.

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47

Smirnov, Vladimir A. Feynman Integral Calculus. Springer, 2010.

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48

Woyczynski, Wojbor A., and Stanislaw Kwapien. Random Series and Stochastic Integrals: Single and Multiple Martingale Methods (Probability & Its Applications). 2nd ed. Birkhauser Boston, 2005.

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49

Jefferies, Brian. Evolution Processes and the Feynman-Kac Formula. Springer, 2010.

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50

Jefferies, Brian. Evolution Processes and the Feynman-Kac Formula. Springer, 2013.

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